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1. LD Motif Recognition by Talin: Structure of the Talin-DLC1 Complex

2. SHANK3 depletion leads to ERK signalling overdose and cell death in KRAS-mutant cancers.

3. Polysaccharide sulfotransferases: the identification of putative sequences and respective functional characterisation.

4. Anion binding to a cationic europium(III) probe enables the first real-time assay of heparan sulfotransferase activity.

5. Synthesis and toxicity profile in 293 human embryonic kidney cells of the β D-glucuronide derivatives of ortho-, meta- and para-cresol.

6. Direct interaction of metastasis-inducing S100P protein with tubulin causes enhanced cell migration without changes in cell adhesion.

7. A further unique chondroitin sulfate from the shrimp Litopenaeus vannamei with antithrombin activity that modulates acute inflammation.

8. New tools for carbohydrate sulfation analysis: heparan sulfate 2- O -sulfotransferase (HS2ST) is a target for small-molecule protein kinase inhibitors.

9. Pressure-Dependent Chemical Shifts in the R3 Domain of Talin Show that It Is Thermodynamically Poised for Binding to Either Vinculin or RIAM.

10. Targeting SxIP-EB1 interaction: An integrated approach to the discovery of small molecule modulators of dynamic binding sites.

11. SHANK proteins limit integrin activation by directly interacting with Rap1 and R-Ras.

12. Vinculin controls talin engagement with the actomyosin machinery.

13. Structural studies on full-length talin1 reveal a compact auto-inhibited dimer: implications for talin activation.

14. RIAM and vinculin binding to talin are mutually exclusive and regulate adhesion assembly and turnover.

15. Asymmetric mode of Ca²⁺-S100A4 interaction with nonmuscle myosin IIA generates nanomolar affinity required for filament remodeling.

16. A conserved lipid-binding loop in the kindlin FERM F1 domain is required for kindlin-mediated αIIbβ3 integrin coactivation.

17. Structural variability of the ubiquitin specific protease DUSP-UBL double domains.

18. A study of the membrane association and regulatory effect of the phospholemman cytoplasmic domain.

19. Mechanism of the Ca²+-dependent interaction between S100A4 and tail fragments of nonmuscle myosin heavy chain IIA.

20. The Structure of the talin head reveals a novel extended conformation of the FERM domain.

21. Central region of talin has a unique fold that binds vinculin and actin.

22. The domain structure of talin: residues 1815-1973 form a five-helix bundle containing a cryptic vinculin-binding site.

23. Structure of a double ubiquitin-like domain in the talin head: a role in integrin activation.

24. Domain motion in cytochrome P450 reductase: conformational equilibria revealed by NMR and small-angle x-ray scattering.

25. The structure of the N-terminus of kindlin-1: a domain important for alphaiibbeta3 integrin activation.

26. The structure of an interdomain complex that regulates talin activity.

27. Structural determinants of integrin binding to the talin rod.

28. Structural basis for the interaction between the cytoplasmic domain of the hyaluronate receptor layilin and the talin F3 subdomain.

29. NMR assignment of the C-terminal actin-binding domain of talin.

30. Crystal structure of the Ca(2+)-form and Ca(2+)-binding kinetics of metastasis-associated protein, S100A4.

31. The structure of the C-terminal actin-binding domain of talin.

32. Role of vinculin in regulating focal adhesion turnover.

33. The activity of the vinculin binding sites in talin is influenced by the stability of the helical bundles that make up the talin rod.

34. Structural and dynamic characterization of a vinculin binding site in the talin rod.

35. Mapping and consensus sequence identification for multiple vinculin binding sites within the talin rod.

36. A vinculin binding domain from the talin rod unfolds to form a complex with the vinculin head.

37. Activation of a vinculin-binding site in the talin rod involves rearrangement of a five-helix bundle.

38. Phosphatidylinositol phosphate kinase type 1gamma and beta1-integrin cytoplasmic domain bind to the same region in the talin FERM domain.

39. The solution structure of the complex of Lactobacillus casei dihydrofolate reductase with methotrexate.

40. The conformation of coenzyme A bound to chloramphenicol acetyltransferase determined by transferred NOE experiments.

41. Role of the active-site carboxylate in dihydrofolate reductase: kinetic and spectroscopic studies of the aspartate 26-->asparagine mutant of the Lactobacillus casei enzyme.

42. Model for the complex between protein G and an antibody Fc fragment in solution.

43. Mapping the interactions between streptococcal protein G and the Fab fragment of IgG in solution.

44. Protein-ligand interactions: exchange processes and determination of ligand conformation and protein-ligand contacts.

45. Three-dimensional structure of proteolytic fragment 163-231 of bacterioopsin determined from nuclear magnetic resonance data in solution.

46. The divalent cation-binding sites of gramicidin A transmembrane ion-channel.

47. Sequence-specific 1H-NMR assignment and conformation of proteolytic fragment 163-231 of bacterioopsin.

48. 1H-NMR study of gramicidin A transmembrane ion channel. Head-to-head right-handed, single-stranded helices.

49. [Spatial structure of gramicidin A in organic solvents. 1H-NMR analysis of conformation heterogeneity in ethanol].

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